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Underlying physical processes for time dependent variations of He triplet and singlet intensities in laser-induced He plasma

机译:用于时间依赖性变化的底层物理过程,他的激光诱导的他等离子体中的三态和单态强度的变化

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摘要

A series of experiments are conducted for the study of time-dependent variations of major emission from the metastable excited He generated in various experimental conditions. Different Nd:YAG laser pulse widths and pulse energies, as well as purity of the He gas, are employed for studying quenching effects including the use of a Cu target in an experimental condition for spectrochemical analysis. It is found that in all cases investigated, the metastable excited He atom (He~*) associated with the triplet He I 587.5 nm emission line has the unquestionable dominance over another triplet emission line of He I 388.8 nm and the singlet He I 667.8 nm emission. Further analysis of the present data combined with the results of previous studies suggested that the energy transfer between He atoms via the Penning-like collision-induced energy transfer process has so far remained less than appropriately addressed. It is strongly argued and demonstrated in this work that this underlying physical process is likely the moving force leading to the repeated He ionizations responsible for the self-propelled multiple amplification of the triplet He I 587.5 nm emission intensity particularly at the early stage of the shock wave formation. This study has convincingly demonstrated that the Penning-like collision-induced energy transfer process can also effectively take place between He~* and the ablated atoms, implying its usefulness for spectrochemical laser-induced plasma spectroscopy analysis.
机译:进行了一系列实验,用于研究各种实验条件中产生的亚稳激发的主要排放的时间依赖性变化。不同的Nd:YAG激光脉冲宽度和脉冲能量以及HE气体的纯度用于研究淬火效应,包括在实验条件下使用Cu靶的分料分析。结果发现,在所有调查的情况下,与三重态的常规激发他的常规兴奋他(他〜*)与他的三重态度有关,他的排放线具有毫无疑问的主导地位,对他的另一个三重态排放线和他的单身射门为667.8 nm。排放。进一步分析本数据与先前研究的结果相结合,表明他通过捏合碰撞诱导的能量转移过程之间的能量转移到目前为止仍然依次仍然不适当地解决。在这项工作中强烈争辩并证明了这种潜在的物理过程可能是导致对重复他的移动的力量,负责自我推进的三重态的多重扩增的电离,特别是在休克的早期阶段的发射强度。波形形成。本研究令人信服地证明了捏合的碰撞诱导的能量转移过程,也可以在他〜*和烧蚀原子之间有效地发生,这意味着它对光度激光诱导的等离子体光谱分析的有用性。

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  • 来源
    《Journal of Applied Physics》 |2020年第24期|243303.1-243303.10|共10页
  • 作者单位

    Department of Industrial Engineering Universitas Pelita Harapan Tangerang 15811 Indonesia;

    Department of Electrical Engineering Universitas Pelita Harapan Tangerang 15811 Indonesia;

    Computer Engineering Department Faculty of Engineering Bina Nusantara University Jakarta 11480 Indonesia;

    Department of Electrical Engineering Krida Wacana Christian University Jakarta 11470 Indonesia;

    Department of Electrical Engineering Krida Wacana Christian University Jakarta 11470 Indonesia;

    Automotive and Robotics Program Computer Engineering Department BINUS ASO School of Engineering Bina Nusantara University Jakarta 11480 Indonesia;

    Research Center of Maju Makmur Mandiri Foundation Jakarta 11630 Indonesia;

    Research Center of Maju Makmur Mandiri Foundation Jakarta 11630 Indonesia;

    Department of Physics Faculty of Sciences and Mathematics Diponegoro University Semarang 50275 Indonesia;

    Faculty of Mathematics and Natural Sciences Jakarta State University Jakarta 13220 Indonesia;

    Department of Physics Faculty of Mathematics and Natural Sciences Syiah Kuala University Banda Aceh 23111 Indonesia;

    Department of Physics Faculty of Mathematics and Natural Sciences Syiah Kuala University Banda Aceh 23111 Indonesia;

    Department of Physics Faculty of Mathematics and Natural Sciences Syiah Kuala University Banda Aceh 23111 Indonesia;

    Chemistry Department Faculty of Mathematics and Natural Sciences Syiah Kuala University Banda Aceh 23111 Indonesia;

    Research Center of Maju Makmur Mandiri Foundation Jakarta 11630 Indonesia Fukui Science Education Academy Takagi Chuou 2 Choume Fukui 910-0804 Japan;

    Research Center of Maju Makmur Mandiri Foundation Jakarta 11630 Indonesia Physics of Magnetism and Photonics Group Faculty of Mathematics and Natural Sciences Bandung Institute of Technology 10 Ganesha Bandung 40132 Indonesia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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